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ROS3是拟南芥中DNA去甲基化所需的一种RNA结合蛋白。

ROS3 is an RNA-binding protein required for DNA demethylation in Arabidopsis.

作者信息

Zheng Xianwu, Pontes Olga, Zhu Jianhua, Miki Daisuke, Zhang Fei, Li Wen-Xue, Iida Kei, Kapoor Avnish, Pikaard Craig S, Zhu Jian-Kang

机构信息

Center for Plant Cell Biology and Department of Botany and Plant Sciences, University of California, Riverside, California 92521, USA.

出版信息

Nature. 2008 Oct 30;455(7217):1259-62. doi: 10.1038/nature07305. Epub 2008 Sep 24.

Abstract

DNA methylation is an important epigenetic mark for transcriptional gene silencing (TGS) in diverse organisms. Recent studies suggest that the methylation status of a number of genes is dynamically regulated by methylation and demethylation. In Arabidopsis, active DNA demethylation is mediated by the ROS1 (repressor of silencing 1) subfamily of 5-methylcytosine DNA glycosylases through a base excision repair pathway. These demethylases have critical roles in erasing DNA methylation and preventing TGS of target genes. However, it is not known how the demethylases are targeted to specific sequences. Here we report the identification of ROS3, an essential regulator of DNA demethylation that contains an RNA recognition motif. Analysis of ros3 mutants and ros1 ros3 double mutants suggests that ROS3 acts in the same genetic pathway as ROS1 to prevent DNA hypermethylation and TGS. Gel mobility shift assays and analysis of ROS3 immunoprecipitate from plant extracts shows that ROS3 binds to small RNAs in vitro and in vivo. Immunostaining shows that ROS3 and ROS1 proteins co-localize in discrete foci dispersed throughout the nucleus. These results demonstrate a critical role for ROS3 in preventing DNA hypermethylation and suggest that DNA demethylation by ROS1 may be guided by RNAs bound to ROS3.

摘要

DNA甲基化是多种生物体中转录基因沉默(TGS)的一种重要表观遗传标记。最近的研究表明,许多基因的甲基化状态受到甲基化和去甲基化的动态调控。在拟南芥中,活性DNA去甲基化由5-甲基胞嘧啶DNA糖基化酶的ROS1(沉默抑制因子1)亚家族通过碱基切除修复途径介导。这些去甲基化酶在消除DNA甲基化和防止靶基因的TGS中起关键作用。然而,尚不清楚这些去甲基化酶如何靶向特定序列。在此,我们报告了ROS3的鉴定,ROS3是一种含有RNA识别基序的DNA去甲基化必需调节因子。对ros3突变体和ros1 ros3双突变体的分析表明,ROS3与ROS1作用于相同的遗传途径以防止DNA超甲基化和TGS。凝胶迁移率变动分析以及对植物提取物中ROS3免疫沉淀的分析表明,ROS3在体外和体内均与小RNA结合。免疫染色显示,ROS3和ROS1蛋白共定位于分散在整个细胞核中的离散位点。这些结果证明了ROS3在防止DNA超甲基化中的关键作用,并表明ROS1介导的DNA去甲基化可能由与ROS3结合的RNA引导。

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